In semiconductor microcavities, electron-polariton scattering has been proposed as an efficient process that can drive polaritons from the bottleneck region to the ground state, achieving Bose amplification of the optical emission. We present clear experimental observation of this process in a structure that allows control of the electron density and we report substantial enhancement of photoluminescence. We show that this enhancement is more effective at higher temperatures due to the different way that electron scattering processes either broaden or relax polaritons
We consider the elastic scattering of polaritons due to quantum well width or alloy composition fluc...
A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence em...
We find strong influence of final-state stimulation on the time-resolved light emission dynamics fro...
We study the effects of electron-polariton scattering in a semiconductor microcavity that allows con...
The relaxation bottleneck present in the dispersion relation of exciton polaritons in semiconductor ...
We show theoretically that the introduction of a cold electron gas into quantum microcavities induce...
The issue of polariton lasing in n-doped microcavities is addressed. We show theoretically that the ...
Polariton microemitters are semiconductor devices that take advantage of the strong coupling of ligh...
Microcavity exciton polaritons, the fundamental optical excitations of semiconductor microcavities w...
Recent work on polariton-polariton scattering in semiconductor microcavities under continuous wave e...
International audienceWe present a microscopic theory describing the stimulated scattering of inters...
We present a theoretical model that allows us to describe the polariton dynamics in a semiconductor ...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
We describe recent continuous wave studies of stimulated polariton scattering in semiconductor micro...
Stimulated polariton scattering in semiconductor microcavities is reported. The phenomena arise from...
We consider the elastic scattering of polaritons due to quantum well width or alloy composition fluc...
A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence em...
We find strong influence of final-state stimulation on the time-resolved light emission dynamics fro...
We study the effects of electron-polariton scattering in a semiconductor microcavity that allows con...
The relaxation bottleneck present in the dispersion relation of exciton polaritons in semiconductor ...
We show theoretically that the introduction of a cold electron gas into quantum microcavities induce...
The issue of polariton lasing in n-doped microcavities is addressed. We show theoretically that the ...
Polariton microemitters are semiconductor devices that take advantage of the strong coupling of ligh...
Microcavity exciton polaritons, the fundamental optical excitations of semiconductor microcavities w...
Recent work on polariton-polariton scattering in semiconductor microcavities under continuous wave e...
International audienceWe present a microscopic theory describing the stimulated scattering of inters...
We present a theoretical model that allows us to describe the polariton dynamics in a semiconductor ...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
We describe recent continuous wave studies of stimulated polariton scattering in semiconductor micro...
Stimulated polariton scattering in semiconductor microcavities is reported. The phenomena arise from...
We consider the elastic scattering of polaritons due to quantum well width or alloy composition fluc...
A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence em...
We find strong influence of final-state stimulation on the time-resolved light emission dynamics fro...